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从废 CRT 漏斗玻璃中提取铅 - 一种电子废物管理方法。

Extraction of lead from waste CRT funnel glass by generating lead sulfide - An approach for electronic waste management.

机构信息

School of Management, Tianjin University of Technology, Tianjin, China; School of Environmental Science and Safety Engineering, Tianjin University of Technology, Tianjin, China.

School of Environmental Science and Safety Engineering, Tianjin University of Technology, Tianjin, China.

出版信息

Waste Manag. 2017 Sep;67:253-258. doi: 10.1016/j.wasman.2017.05.048. Epub 2017 Jun 3.

Abstract

Waste cathode ray tube (CRT) funnel glass is the key and difficult points in waste electrical and electronic equipment (WEEE) disposal. In this paper, a novel and effective process for the detoxification and reutilization of waste CRT funnel glass was developed by generating lead sulfide precipitate via a high-temperature melting process. The central function in this process was the generation of lead sulfide, which gathered at the bottom of the crucible and was then separated from the slag. Sodium carbonate was used as a flux and reaction agent, and sodium sulfide was used as a precipitating agent. The experimental results revealed that the lead sulfide recovery rate initially increased with an increase in the amount of added sodium carbonate, the amount of sodium sulfide, the temperature, and the holding time and then reached an equilibrium value. The maximum lead sulfide recovery rate was approximately 93%, at the optimum sodium carbonate level, sodium sulfide level, temperature, and holding time of 25%, 8%, 1200°C, and 2h, respectively. The glass slag can be made into sodium and potassium silicate by hydrolysis in an environmental and economical process.

摘要

废阴极射线管(CRT)漏斗玻璃是废弃电子电气设备(WEEE)处置的关键和难点。本文提出了一种通过高温熔融过程生成硫化铅沉淀来解毒和再利用废 CRT 漏斗玻璃的新颖而有效的方法。该过程的核心功能是生成硫化铅,其聚集在坩埚底部,然后与炉渣分离。碳酸钠用作助熔剂和反应剂,硫化钠用作沉淀剂。实验结果表明,硫化铅的回收率最初随碳酸钠、硫化钠、温度和保温时间添加量的增加而增加,然后达到平衡值。在最佳碳酸钠水平、硫化钠水平、温度和保温时间分别为 25%、8%、1200°C 和 2h 的条件下,硫化铅的最大回收率约为 93%。玻璃炉渣可以通过水解转化为硅酸钠和硅酸钾,这是一种环保且经济的工艺。

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